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Constraint Effective Potential of the Magnetization - Uwe
Constraint Effective Potential of the Magnetization - Uwe

Coherent states in the presence of a variable magnetic field
Coherent states in the presence of a variable magnetic field

Long Term Confidentiality: a Survey
Long Term Confidentiality: a Survey

... term confidentiality, often by law. For example, German law stipulates that medical and legal data remain confidential from third parties even after death of a patient or client [50]. As more and more sensitive medical and legal data is processed and stored electronically, ensuring its long term co ...
Quantum dynamics in strong fluctuating fields - Physik Uni
Quantum dynamics in strong fluctuating fields - Physik Uni

Dimensional External Trapping Potential Applied For BEC
Dimensional External Trapping Potential Applied For BEC

Non-Abelian Anyons and Topological Quantum Computation
Non-Abelian Anyons and Topological Quantum Computation

Collective Coherent Oscillation Plasma Modes in Surrounding
Collective Coherent Oscillation Plasma Modes in Surrounding

Paper
Paper

... Systems of fermions obey the Pauli exclusion principle. Processes that would require two fermions to occupy the same quantum state are suppressed. In recent years, several classic experiments have directly observed manifestations of Pauli suppression in Fermi gases. Antibunching and the suppression ...
Quantum many-particle electron transport in time-dependent systems with Bohmian trajectories by Alfonso Alarc´
Quantum many-particle electron transport in time-dependent systems with Bohmian trajectories by Alfonso Alarc´

... Thesis supervisor: Xavier Oriols Pladevall Date of defense: April 2011 ...
Critical and oÿ-critical singularities in disordered quantum magnets H. Rieger
Critical and oÿ-critical singularities in disordered quantum magnets H. Rieger

... 0)]av ý T ( )ÿ1 with a continuously varying exponent, which is reminiscent of the non-Fermi liquid behavior observed in rare earth alloys [8]. Similarly the local nonlinear susceptibility has an even stronger divergence, [ønl(! = 0)]av ý T ( )ÿ3, analogously for higher derivatives of the magnetizati ...
DIETER LÜST (LMU, MPI) - Stony Brook University
DIETER LÜST (LMU, MPI) - Stony Brook University

Signatures of tunable Majorana
Signatures of tunable Majorana

... the S region. As shown in Ref. [33], this results in the formation of chiral DiracAndreev edge states, similar to the ones discussed previously for an S–graphene hybrid structure [36]. The quantum description of these edge channels reveals that one of them is associated with a chiral Majorana fermio ...
Interface between path and orbital angular momentum
Interface between path and orbital angular momentum

... Generation of OAM modes with a MS in reverse. Transverse spatial LG modes have a helical phase front eily, where l can take any integer value and represents the quanta of OAM each individual photon possesses20. If la0, such modes exhibit a vortex along the beam axis and show a ring-shaped intensity ...
Bose-Glass Phases of Ultracold Atoms due to Cavity Backaction Hessam Habibian,
Bose-Glass Phases of Ultracold Atoms due to Cavity Backaction Hessam Habibian,

... with the one found for s0 ¼ 0: In fact, for larger quantum ^ ! 0 in the thermodynamic limit. This fluctuations hi feature is strikingly different from the situation in which the incommensurate potential is classical [30,31]: There, the MI lobes shrink at all values of t with respect to the pure cas ...
Angle Dependence of the Orbital Magnetoresistance in Bismuth
Angle Dependence of the Orbital Magnetoresistance in Bismuth

Particle Creation in Inflationary Spacetime
Particle Creation in Inflationary Spacetime

An introduction to lattice gauge theory and spin systems
An introduction to lattice gauge theory and spin systems

Superconducting Circuits and Quantum Computation—T. P. Orlando
Superconducting Circuits and Quantum Computation—T. P. Orlando

... Superconducting circuits are being used as components for quantum computing and as model systems for non-linear dynamics. Quantum computers are devices that store information on quantum variables and process that information by making those variables interact in a way that preserves quantum coherenc ...
The Search for Matter--Anti-Matter Asymmetries in the
The Search for Matter--Anti-Matter Asymmetries in the

...  As particle physicists, we study the fundamental constituents of matter and their interactions.  Our understanding of these issues is built upon certain fundamental principles – The laws of physics are the same everywhere – The laws of physics are the same at all times – The laws of physics are t ...
The Physics of Inflation
The Physics of Inflation

... Cosmological inflation, an early period of accelerated expansion, solves the horizon problem dynamically and allows our universe to arise from generic initial conditions. At the same time, quantum fluctuations during inflation produce small inhomogeneities. The primordial seeds that grew into galaxi ...
Clive_Speake
Clive_Speake

... • Fundamental physics experiments in the ...
Contextualizing Concepts using a Mathematical Generalization of
Contextualizing Concepts using a Mathematical Generalization of

Future of Hadron Physics
Future of Hadron Physics

... Hadron Town Meeting at DNP2012 ...
Quantum Information Processing
Quantum Information Processing

Secure quantum sealed
Secure quantum sealed

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History of quantum field theory

In particle physics, the history of quantum field theory starts with its creation by Paul Dirac, when he attempted to quantize the electromagnetic field in the late 1920s. Major advances in the theory were made in the 1950s, and led to the introduction of quantum electrodynamics (QED). QED was so successful and ""natural"" that efforts were made to use the same basic concepts for the other forces of nature. These efforts were successful in the application of gauge theory to the strong nuclear force and weak nuclear force, producing the modern standard model of particle physics. Efforts to describe gravity using the same techniques have, to date, failed. The study of quantum field theory is alive and flourishing, as are applications of this method to many physical problems. It remains one of the most vital areas of theoretical physics today, providing a common language to many branches of physics.
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